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Distributed Secondary Frequency Control for Microgrids Under Weak Communication Conditions

机译:在弱通信条件下的微电网分布二次频率控制

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Consensus-based control is a typical distributed control method that has been widely applied in microgrids. As a distributed control method, the performance of consensus-based control depends greatly on reliable communication networks. In practical systems, weak communication conditions, e.g. low communication bandwidths and communication failures, will significantly deteriorate the performance of consensus-based control and even affect the microgrid’s stability. This paper focuses on consensus-based secondary frequency control of microgrids under weak communication conditions. In order to mitigate the influence of weak communication conditions, a fully decentralized event-triggered strategy and a time-varying control gain are introduced, and a distributed secondary frequency control method with finite-time convergence performance is developed. A detailed performance analysis of the proposed control is presented, which provides theoretical guidance for its practical application. Simulation based on MATLAB/Simulink verifies the effectiveness of the proposed method.
机译:基于共识的控制是一种典型的分布式控制方法,已广泛应用于微电网。作为分布式控制方法,基于共识的控制的性能在很大程度上取决于可靠的通信网络。在实际系统中,通信条件较弱,例如,低通信带宽和通信故障,将显着恶化基于共识的控制性能,甚至影响微电网的稳定性。本文重点介绍了弱通信条件下对微电网的基于共识的二次频率控制。为了减轻弱通信条件的影响,介绍了完全分散的事件触发策略和时变控制增益,并且开发了具有有限时间收敛性能的分布式二次频率控制方法。提出了对拟议控制的详细性能分析,为其实际应用提供了理论指导。基于MATLAB / SIMULINK的仿真验证了所提出的方法的有效性。

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